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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >alpha-Synuclein (alpha Syn) Preformed Fibrils Induce Endogenous alpha Syn Aggregation, Compromise Synaptic Activity and Enhance Synapse Loss in Cultured Excitatory Hippocampal Neurons
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alpha-Synuclein (alpha Syn) Preformed Fibrils Induce Endogenous alpha Syn Aggregation, Compromise Synaptic Activity and Enhance Synapse Loss in Cultured Excitatory Hippocampal Neurons

机译:α-突触核蛋白(αSYN)预成型的原纤维诱导内源性α相同步聚集,抑制突触活性,增强培养的兴奋性海马神经元的突触损失

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摘要

Synucleinopathies are characterized by the accumulation of insoluble alpha-synuclein (alpha Syn). To test whether alpha Syn aggregates modulate synaptic activity, we used a recently developed model in primary neurons for inducing alpha Syn pathology. Wedemonstrated that preformed fibrils (PFFs) generated with recombinant human alpha Syn compromised synaptic activity in a time-and dose-dependent manner and that the magnitude of these deficits correlated with the formation of alpha Syn pathology in cultured excitatory hippocampal neurons from both sexes of mice. Remarkably, acute passive infusion of alpha Syn PFFs from whole-cell patch-clamp pipette decreased mEPSC frequency within 10 min followed by induction of alpha Syn pathology within 1 d. Moreover, by direct addition of alpha Syn PFFs into culture medium, the formation of misfolded alpha Syn inclusions dramatically compromised the colocalization of synaptic markers and altered dynamic changes of dendritic spines, but the viability of neurons was not affected up to 7 d post-treatment with alpha Syn PFFs. Our data indicate that intraneuronal alpha Syn fibrils impaired the initiation of synaptogenesis and their physiological functions, thereby suggesting that targeting synaptic dysfunction in synucleinopathies may provide a promising therapeutic direction.
机译:突变素病症的特征在于不溶性α-突触核蛋白(αSYN)的积累。为了测试α1An聚集是否调节突触活动,我们在原发性神经元中使用了最近开发的模型来诱导αSYN病理学。 WeDemontrated将具有重组人α的造成的原纤维(PFFS)以时间和剂量依赖的方式产生的突触活性,并且这些缺陷的幅度与来自小鼠的两性培养的兴奋性海马神经元中的αSyn病理学的形成相关。值得注意的是,来自全细胞贴片钳中αSYN PFFS的急性被动输注从整个细胞膜片液移液管减少10分钟内的MEPSC频率,然后在1天内诱导αSYN病理学。此外,通过将αSYN PFFS的直接添加到培养基中,形成错误的αSYN夹杂物的形成显着损害了突触标志物的分层化并改变了树突刺的动态变化,但是神经元的活力不受治疗的7 d达7 d的影响用alpha syn pffs。我们的数据表明,Intraneuronalα1An纤维损伤的突触发生和它们的生理功能的开始损害,从而表明靶向突触蛋白病症中的突触功能障碍可以提供有前途的治疗方向。

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